Rope head

The design of the interlocking and detachable rope end solves the problem of the rope end not being replaceable, and realizes flexible replacement and stable connection of the rope end, meeting the needs of clothing style updates and DIY.

CN223695006UActive Publication Date: 2025-12-23ZHEJIANG WEIXING IND DEV
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Patent Information

Application Number
CN202422915036.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-12-23
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

The existing rope ends are fixedly connected to the rope and cannot be replaced or changed, which cannot meet the needs of clothing style updates and DIY, and it is difficult to replace the rope ends when they are damaged.

Method used

The first and second connecting bodies are designed to be interlocked and detachable. Movement is restricted by locking points and the connection can be released by rotation, thus achieving a detachable rope end design.

Benefits of technology

It improves the flexibility of rope end replacement and assembly stability, meets the needs of rope end replacement, and simplifies the process of rope end disassembly and installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rope head. The rope head comprises a first connecting body and a second connecting body which are embedded with each other and are detachably connected. The rope heads are assembled in an embedded and detachable connection mode, the rope head replacement flexibility is improved, and the requirement for rope head replacement is met. The first connecting body and the second connecting body which are mutually embedded are connected, the assembling stability of the connected rope head is improved, meanwhile, the rope head is formed by assembling the rope head in an embedded and detachable connecting mode, the rope head replacing flexibility is improved, and the requirement for replacing the rope head is met.
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Description

Technical Field

[0001] This utility model belongs to the field of rope end technology, and specifically relates to a rope end. Background Technology

[0002] In clothing, shoes, and other wearable items with ties or cords, cord ends are often provided to neaten the ends or improve durability, thus enhancing the appearance and user experience. Currently, cords and cord ends are fixed together using glue or similar methods, but these cord ends cannot be replaced or removed once attached. Given the rapid pace of style updates in the clothing industry, customer DIY needs, and the need to replace damaged cord ends, a replaceable cord end is a viable solution, making the development of such a cord end necessary. Utility Model Content

[0003] The purpose of this invention is to provide a rope end to solve the aforementioned technical problems. The rope end is assembled by a snap-fit ​​and detachable connection, improving the flexibility of rope end replacement and meeting the needs of rope end replacement. The first and second connecting bodies are connected by a snap-fit ​​mechanism, improving the assembly stability of the rope end after connection. Simultaneously, the snap-fit ​​and detachable connection of the rope end enhances the flexibility of rope end replacement and meets the needs of rope end replacement.

[0004] To achieve the above-mentioned objectives, the technical solution adopted by this utility model is as follows:

[0005] A rope end includes a first connecting body and a second connecting body that are interlocked and detachably connected. The rope end is assembled through this interlocking and detachable connection, improving the flexibility of rope end replacement and meeting the needs for rope end replacement. The interlocking first and second connecting bodies improve the assembly stability of the rope end after connection, and the interlocking and detachable connection further enhances the flexibility of rope end replacement, meeting the needs for rope end replacement.

[0006] Preferably, the first connecting body and the second connecting body are provided with locking points to keep them connected. The first connecting body and the second connecting body are connected through the locking points, which restrict the movement of the first connecting body and the second connecting body after the locking points are connected, thereby connecting the first connecting body and the second connecting body. This connection method is convenient for disassembly. By releasing the restriction of the locking points, the first connecting body and the second connecting body can be separated, thereby performing a replacement operation.

[0007] Preferably, the locking point includes a slot and a locking point that abuts against the slot to restrict the relative movement between the first connecting body and the second connecting body. By providing the connected slot and locking point, when the locking point is confined within the slot, the relative movement of the first connecting body and the second connecting body is restricted, thereby completing the connection between them. When disassembly is required, rotating the first or second connecting body releases the connection between the locking point and the slot, thus releasing the restriction on the interlocking first and second connecting bodies, facilitating the removal of the rope end, improving the flexibility of rope end replacement, and meeting the needs of rope end replacement.

[0008] Preferably, the slot is disposed on the first connecting body; the locking point is disposed on the second connecting body and abuts against the slot to restrict the relative movement of the first connecting body and the second connecting body. The slot on the first connecting body is limited by the locking point on the second connecting body, and the slot and locking point abut against each other to limit the relative movement of the first connecting body and the second connecting body, thereby completing the assembly of the rope end; when disassembly is required, by rotating the first connecting body or the second connecting body, the connection between the locking point and the slot is released accordingly, and the interlocking first connecting body and the second connecting body are released from the restricted state, which facilitates the disassembly of the rope end, improves the flexibility of rope end replacement, and meets the needs of rope end replacement.

[0009] Preferably, the first connecting body is provided with a first connecting post; the second connecting body is provided with a first connecting groove that engages with the first connecting post. The engagement of the first connecting post and the first connecting groove provides a fulcrum for contact on the side, improving the assembly stability of the first connecting body and the second connecting body; at the same time, when disassembling the first connecting body and the second connecting body, the sides are in contact during the rotation of the first connecting body and the second connecting body, facilitating circumferential rotation.

[0010] Preferably, the slot is disposed on the first connecting post; the locking point is disposed on the first connecting groove. This arrangement has a high degree of integration, improves the compactness of the overall structure, and reduces the space required for installation.

[0011] Preferably, the slot includes a slot body and a slot end disposed at the end of the slot body and abutting against the locking point for limiting positioning. The locking point enters through the slot body and is moved to the slot end by rotation. The slot end abuts against the locking point, thereby preventing the locking point from disengaging from the slot end to the outside, thus connecting the first connecting body and the second connecting body. When disassembly is required, the locking point is moved from the slot end to the slot body and then to the outside, thereby releasing the connection between the first connecting body and the second connecting body.

[0012] Preferably, the slot is inverted "L" shape. The inverted "L" shape creates a certain gap between the end of the slot and the initial entry end of the slot body. Simultaneously, the end of the slot is closed, preventing the locking point from disengaging from the closed end of the slot when it abuts against it. This limits the locking point and the slot, thus connecting the first connecting body and the second connecting body. When it is necessary to disconnect the first and second connecting bodies, the locking point moves towards the other end of the slot and then to the outside through the initial entry end of the slot body, thereby detaching the first and second connecting bodies. This achieves a detachable design, which is simple, easy to implement, and reduces the difficulty of disassembly.

[0013] Preferably, an elastic component is provided between the first connecting body and the second connecting body to keep the locking point and the locking slot in contact. The force direction of the elastic component on the first connecting body and the second connecting body corresponds to the connected locking slot and locking point, so that the end of the locking slot continuously abuts against the locking point to restrict the relative movement between the first connecting body and the second connecting body. The elastic component provides the first connecting body and the second connecting body with forces that move in opposite directions. Simultaneously, in conjunction with the positions of the locking point and the end of the locking slot, the locking point, under the force of the elastic component, continuously abuts against the end of the locking slot. The left and right sides of the end of the locking slot are closed, preventing the locking point from disengaging from either direction. This allows the first connecting body to connect with the second connecting body under the force of the elastic component and the limiting action of the locking point and the locking slot. This connection under applied force effectively prevents collisions. The impact of external forces such as impacts on the connecting structure is mitigated, improving the connection stability between the first and second connecting bodies. When disassembly is required, the first and second connecting bodies are moved in the opposite direction of the force applied by the elastic component. Simultaneously, the locking point moves in the opposite direction from the end of the slot. By rotating the first and second connecting bodies, the locking point moves and approaches the entry end of the slot body, thereby releasing the first and second connecting bodies. The elasticity of the elastic component causes the first and second connecting bodies to move axially, causing the locking point to disengage from the entry end of the slot body, thus terminating the connection between the first and second connecting bodies. This disassembly method facilitates user operation, improves the flexibility of rope end replacement, and meets the needs of rope end replacement.

[0014] Preferably, one end of the elastic component abuts against the inner surface of the second connecting body, and the other end of the elastic component abuts against the side of the first connecting body facing the second connecting body. The elastic component is disposed within the second connecting body; the elastic component is disposed within the second connecting body, and its two ends abut against the axial end face of the first connecting post of the first connecting body and the axial inner surface of the second connecting body, respectively, reducing the installation space. At the same time, the elastic component disposed inside can continuously provide elastic force, avoiding external influences and improving the stability of the limiting position.

[0015] Preferably, the first connecting body is connected to a rope.

[0016] Preferably, the first connecting body is provided with a first connecting hole for connecting the rope and a second connecting hole that penetrates the first connecting hole. A connecting screw passes through the second connecting hole, and the end of the screw abuts against the rope. The axial directions of the first connecting hole and the second connecting hole are perpendicular to each other. The screw passes through the second connecting hole and abuts against the rope passing through the first connecting hole, completing the operation of connecting the first connecting body to the rope. This connection method has strong connection stability, and when it is necessary to disconnect the first connecting body from the rope, the screw can be turned in the opposite direction to release the abutment against the rope, which is convenient for disassembly and replacement.

[0017] Preferably, the elastic component is disposed inside the second connecting body.

[0018] Preferably, the locking point is located above the elastic component;

[0019] Projecting onto the axial direction of the second connecting body, the projection of the locking point intersects with the projection of the elastic component. The locking point effectively prevents the elastic component from detaching from the second connecting body.

[0020] This application has achieved beneficial technical effects:

[0021] The rope end of this invention is assembled by a snap-fit ​​and detachable connection, which improves the flexibility of rope end replacement and meets the needs of rope end replacement. The first connecting body and the second connecting body are connected by a snap-fit, which improves the assembly stability of the rope end after connection. At the same time, the snap-fit ​​and detachable connection of the rope end improves the flexibility of rope end replacement and meets the needs of rope end replacement. Attached Figure Description

[0022] Figure 1 The diagram shown is a schematic representation of the assembly effect of this utility model.

[0023] Figure 2 The diagram shown is an exploded structural schematic of this utility model;

[0024] Figure 3 The diagram shown is a cross-sectional view of the present invention.

[0025] Figure 4 The diagram shown is a cross-sectional view of the combined structure of this utility model;

[0026] Figure 5 The diagram shown is a comparison of different states of the locking point of this utility model;

[0027] Figure 6 The diagram shows the component structure of this utility model from different perspectives.

[0028] Figure Labels

[0029] 11-First connecting body; 12-Second connecting body; 1-Screw; 2-Elastic component; 3-First connecting hole; 4-Second connecting hole; 5-Slot; 6-First connecting groove; 7-Clack point; 8-End of slot. Detailed Implementation

[0030] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.

[0031] The technical solution of this utility model will be described in detail below with specific embodiments.

[0032] Reference Figures 1 to 6 As shown, a rope end includes a first connecting body 11 and a second connecting body 12 that are interlocked and detachably connected. The rope end is assembled through this interlocking and detachable connection, improving the flexibility of rope end replacement and meeting the needs for rope end replacement. The interlocking first connecting body 11 and the second connecting body 12 are connected to improve the assembly stability of the rope end after connection. Simultaneously, the rope end is assembled through this interlocking and detachable connection, improving the flexibility of rope end replacement and meeting the needs for rope end replacement.

[0033] The first connecting body 11 and the second connecting body 12 are provided with locking points to keep them connected. The first connecting body 11 and the second connecting body 12 are connected by the locking points. After the locking points are connected, the movement of the first connecting body 11 and the second connecting body 12 is restricted, thereby connecting the first connecting body 11 and the second connecting body 12. This connection method is convenient for disassembly. By releasing the restriction of the locking points, the first connecting body 11 and the second connecting body 12 can be separated, thereby allowing for replacement.

[0034] The locking point includes a slot 5 and a locking point 7 that abuts against the slot 5 to restrict the relative movement between the first connecting body 11 and the second connecting body 12. The slot 5 and locking point 7 are connected. When the locking point 7 is confined within the slot 5, it restricts the relative movement of the first connecting body 11 and the second connecting body 12, thus completing the connection between them. When disassembly is required, rotating either the first connecting body 11 or the second connecting body 12 releases the connection between the locking point 7 and the slot 5, releasing the restriction on the interlocking first connecting body 11 and the second connecting body 12, facilitating the removal of the rope end, improving the flexibility of rope end replacement, and meeting the needs of rope end replacement.

[0035] The slot 5 is disposed on the first connecting body 11; the locking point 7 is disposed on the second connecting body 12 and abuts against the slot 5 to restrict the relative movement of the first connecting body 11 and the second connecting body 12. The slot 5 disposed on the first connecting body 11 is limited by the locking point 7 disposed on the second connecting body 12. The slot 5 abuts against the locking point 7 to limit the relative movement of the first connecting body 11 and the second connecting body 12, thereby completing the assembly of the rope end. When disassembly is required, the connection between the locking point 7 and the slot 5 is released by rotating the first connecting body 11 or the second connecting body 12. The interlocking first connecting body 11 and the second connecting body 12 are then released from the restricted state, facilitating the disassembly of the rope end, improving the flexibility of rope end replacement, and meeting the needs of rope end replacement.

[0036] The first connecting body 11 is provided with a first connecting post 9; the second connecting body 12 is provided with a first connecting groove 6 that engages with the first connecting post 9. The first connecting post 9 and the first connecting groove 6 engage with each other, providing a support point on the side, which improves the assembly stability of the first connecting body 11 and the second connecting body 12; at the same time, when disassembling the first connecting body 11 and the second connecting body 12, their sides are in contact during the rotation of the first connecting body 11 and the second connecting body 12, which facilitates circumferential rotation.

[0037] The slot 5 is disposed on the first connecting post 9; the locking point 7 is disposed on the first connecting groove 6. This arrangement has a high degree of integration, improves the compactness of the overall structure, and reduces the space required for installation.

[0038] The slot 5 includes a slot body 13 and a slot end 8 located at the end of the slot body 13 and abutting against the locking point 7 for limiting positioning. The locking point 7 enters through the slot body 13 and is moved to the slot end 8 by rotation. The slot end 8 abuts against the locking point 7, thereby preventing the locking point 7 from disengaging from the slot end 8 to the outside, thus connecting the first connecting body 11 and the second connecting body 12. When disassembly is required, the locking point 7 is moved from the slot end 8 to the slot body 13 and then moved to the outside, thereby releasing the connection between the first connecting body 11 and the second connecting body 12.

[0039] The slot 5 is inverted "L" shape. This inverted "L" shape creates a certain distance between the end 8 of the slot and the initial entry end of the slot body 13. Simultaneously, the end 8 of the slot is closed, preventing the locking point 7 from disengaging from the closed end 8. This effectively limits the locking point 7's position within the slot 5, thus connecting the first connecting body 11 and the second connecting body 12. When it is necessary to disconnect the first connecting body 11 and the second connecting body 12, the locking point 7 moves towards the other end of the slot 8 and then to the outside through the initial entry end of the slot body 13, thereby detaching the first connecting body 11 and the second connecting body 12. This detachable method is simple, easy to implement, and reduces the difficulty of disassembly.

[0040] An elastic component 2 is provided between the first connecting body 11 and the second connecting body 12 to keep the locking point 7 in contact with the locking slot 5. The force direction of the elastic component on the first connecting body 11 and the second connecting body 12 corresponds to the connected locking slot 5 and locking point 7, so that the end of the locking slot 8 continuously abuts against the locking point 7 to restrict the relative movement between the first connecting body 11 and the second connecting body 12. The elastic component provides the first connecting body 11 and the second connecting body 12 with forces that move in opposite directions. Simultaneously, in conjunction with the positions of the locking point 7 and the end of the locking slot 8, the locking point 7 continuously abuts against the end of the locking slot 8 under the force of the elastic component. The left and right sides of the end of the locking slot 8 are closed, preventing the locking point from disengaging from either direction. This allows the first connecting body 11 to connect with the second connecting body 12 under the force of the elastic component and the limiting action of the contact between the locking point 7 and the locking slot 5. This connection under applied force effectively copes with situations such as collisions. The influence of external force on the connection structure improves the connection stability between the first connecting body 11 and the second connecting body 12. When disassembly is required, the first connecting body 11 and the second connecting body 12 are moved in the opposite direction of the force applied by the elastic component. At the same time, the locking point 7 moves in the opposite direction from the end 8 of the slot. By rotating the first connecting body 11 and the second connecting body 12, the locking point 7 moves and approaches the entry end of the slot body 13, thereby releasing the first connecting body 11 and the second connecting body 12. The elastic effect of the elastic component causes the first connecting body 11 and the second connecting body 12 to move axially, so that the locking point 7 is disengaged from the entry end of the slot body 13, thereby releasing the connection between the first connecting body 11 and the second connecting body 12. This disassembly method is convenient for users to operate, improves the flexibility of rope head replacement, and meets the needs of rope head replacement.

[0041] One end of the elastic component 2 abuts against the inner surface of the second connecting body 12, and the other end of the elastic component 2 abuts against the side of the first connecting body 11 facing the second connecting body 12. The elastic component 2 is disposed within the second connecting body; in this technical solution, the elastic component 2 is specifically a spring; the elastic component 2 is disposed within the second connecting body 12, and its two ends abut against the axial end face of the first connecting post 9 of the first connecting body 11 and the axial inner surface of the second connecting body 12, respectively, reducing the installation space. At the same time, the elastic component 2 disposed inside can continuously provide elastic force, avoiding external influences and improving the stability of the limit.

[0042] The first connecting body 11 connects to a rope. The first connecting body 11 has a first connecting hole 3 for connecting the rope and a second connecting hole 4 that penetrates the first connecting hole 3. A connecting screw 1 passes through the second connecting hole 4, and the end of the screw 1 abuts against the rope. The axial direction of the first connecting hole 3 is perpendicular to the axial direction of the second connecting hole 4. The screw 1 passes through the second connecting hole 4 and abuts against the rope passing through the first connecting hole 3, completing the connection of the first connecting body 11 to the rope. This connection method provides strong stability, and when it is necessary to disconnect the first connecting body 11 from the rope, the screw 1 can be turned in the opposite direction to release the abutment against the rope, facilitating disassembly and replacement. Preferably, other fixing methods such as glue or clips can be used to fix the rope to the first connecting body.

[0043] The elastic component 2 is disposed inside the second connecting body 12. The locking point is disposed above the elastic component; projected along the axial direction of the second connecting body 12, the projection of the locking point intersects with the projection of the elastic component. The locking point can effectively prevent the elastic component from coming out of the second connecting body.

[0044] In this technical solution, the replaceable rope end structure will solve the need for quick replacement of the original rope end if it is damaged or if you want to try other styles;

[0045] The first connecting hole 4 is used to insert one end of the rope. Then screw 1 into the second connecting hole 4 to fix the first connecting body 11 to one end of the rope. This fixing method can also be replaced by glue or other methods.

[0046] The second connecting body 12 has a locking point 7 on the replaceable rope end surface, which is stamped inward. First, the elastic component 2 is inserted into the rope end, then the locking point is stamped to fix the elastic component 2 inside the rope end, preventing the spring from falling out. This achieves the goal of preventing the elastic component 2 inside the second connecting body 12 from falling out after disassembly, as shown in Figure 3.

[0047] The lower part of the first connecting body 11 has an inverted L-shaped slot. Align the slot with the locking point 7 and insert the second connecting body 12, then rotate it into the L-shaped slot. Figure 4As shown, because the second connecting body 12 contains an elastic component 2, it will press the first connecting body upwards, so that the locking point is exactly located at the downward end 8 of the L-shaped slot. When the second connecting body encounters a collision during use, it will not rotate left or right, making the second connecting body 12 more firmly fixed to the first connecting body, as shown. Figure 4 , Figure 5 As shown. Figure 5 The left side shows the state where the locking point is engaged and fixed at the end 8 of the slot after the first connecting body 11 is released; the right side shows the state where the locking point is disengaged from the end 8 of the slot after the first connecting body 11 is pressed down and rotated.

[0048] To disassemble the second connecting body, simply press the first connecting body so that the locking point 7 of the second connecting body is positioned in the upper part of the slot 5. Then, rotate and pull the first connecting body 11 upwards to allow the locking point 7 to slide out of the notch in the slot 5, thus making the second connecting body 12 detachable and replaceable. Figure 4 , Figure 5 As shown.

[0049] Example 2

[0050] This embodiment only describes the differences from the above embodiments; other technical features are the same. Specifically, the fixed positions of the slot and the locking point are different. The locking point includes a slot disposed on the second connecting body 12 and a locking point disposed on the first connecting body 11 and abutting against the slot to restrict the relative movement of the first connecting body 11 and the second connecting body 12. With the slot and locking point connected, when the locking point is confined within the slot, the relative movement of the first connecting body 11 and the second connecting body 12 is restricted, thereby completing the connection between the two. When disassembly is required, by rotating the first connecting body 11 or the second connecting body 12, the connection between the locking point and the slot is released, and the mutually fitted first and second connecting bodies are released from their restricted state, facilitating the disassembly of the rope end, improving the flexibility of rope end replacement, and meeting the needs of rope end replacement.

[0051] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0052] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

[0053] The embodiments of the rope end provided by this utility model have been described in detail above. Specific examples have been used to illustrate the principle and implementation of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the core idea of ​​this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A rope end, characterized in that, It includes a first connecting body (11) and a second connecting body (12) that are interlocked and detachably connected; The first connecting body (11) and the second connecting body (12) are provided with locking points to keep them connected; The locking point includes a slot (5) and a locking point (7) that abuts against the slot (5) to restrict the relative movement between the first connecting body (11) and the second connecting body (12).

2. The rope end according to claim 1, characterized in that, The slot (5) is disposed on the first connecting body (11); the locking point (7) is disposed on the second connecting body (12) and abuts against the slot (5) to restrict the relative movement of the first connecting body (11) and the second connecting body (12).

3. The rope end according to claim 1 or 2, characterized in that, The first connecting body (11) is provided with a first connecting post (9); the second connecting body (12) is provided with a first connecting groove (6) that fits into the first connecting post (9); The slot (5) is provided on the first connecting post (9); the locking point (7) is provided on the first connecting groove (6).

4. The rope end according to claim 1 or 2, characterized in that, The card slot (5) includes a card slot body (13) and a card slot end (8) disposed at the end of the card slot body (13) and abutting against the card point (7) for limiting the position.

5. The rope end according to claim 1 or 2, characterized in that, The slot (5) is inverted "L" shape.

6. The rope end according to claim 2, characterized in that, An elastic component (2) is provided between the first connecting body (11) and the second connecting body (12) to keep the locking point (7) and the slot (5) in contact.

7. The rope end according to claim 6, characterized in that, The elastic component (2) is disposed inside the second connecting body (12), and the locking point is disposed above the elastic component; Projecting onto the second connecting body (12) in the axial direction, the projection of the locking point intersects with the projection of the elastic component.

8. The rope end according to claim 6 or 7, characterized in that, One end of the elastic component (2) abuts against the inner surface of the second connecting body (12), and the other end of the elastic component (2) abuts against the side of the first connecting body (11) facing the second connecting body (12).

9. The rope end according to claim 1, characterized in that, The first connecting body (11) is provided with a first connecting hole (3) for connecting rope and a second connecting hole (4) that passes through the first connecting hole (3). The second connecting hole (4) passes through the connecting screw (1) and the end of the screw (1) abuts against the rope.